[1]
Chen Liemin. Spacecraft Structure and Mechanism [M]. Beijing: China Science and Technology Press, 2005: 2-3.
Google Scholar
[2]
Chen Liemin. Composite Material Mechanics and Structural Mechanics [M]. Beijing: China Science and Technology Press, (2001).
Google Scholar
[3]
Chen Liemin, Wo Xiyuan. The Application and Development of Spacecraft Structural Material [J]. Spacecraft Recoveray and Remote Sensing, 2007, (3): 58-61.
Google Scholar
[4]
Dong Yanzhi, Liupeng, Wang Guodong, etc. The Current Status of Application and Future Needs for Spacecraft Structural Material [J]. Spacecraft Environment Engineering, 2010; 27(1): 41~44.
Google Scholar
[5]
Du Shanyi. Advanced Composite Materials and Aerospace Engineering [J]. Journal of Composite Materials, 2007; 24(1): 1~12.
Google Scholar
[6]
Leng Jinsong, Lanxin, Liu Yanju, etc. Shape Memory Polymers Composites and Their Applications in Deployable Structures[J]. Journal of Aeronautics, 2010; 4: 950~956.
Google Scholar
[7]
Song Liqiang, Yang Shimo , Chen Zhiyuan. Study on Optimization and Application of Mirror Materials of Space Astronomical Instruments[J]. Materials Review, 2008, 22(12)5~9.
Google Scholar
[8]
Yang Baohua, etc. Spacecraft Materials and Processing Technology[M]. China Academy of Space Technology, 2003: 235~241.
Google Scholar
[9]
Wu Guoting. The Current Status and Development of Thermal-Protective Technology for Manned Spacecraft [G]. Space Technology Intelligence Study, 1992(2): 295~310.
Google Scholar
[10]
Liu Yuyan, Meng Qiuying, etc. The Situation of Rigidizable Materials and Rigidizatio Technology Used in Space Inflatable Structures[J]. Material Engineering, 2008; 2: 76~80.
Google Scholar
[11]
Compiler Committee of China Aeronautical Materials Handbook. China Aeronautical Materials Handbook[M]. Beijing: Standards Press of China, (2002).
Google Scholar
[12]
Wang Yaobing, Ma Haiquan. The Development Trend of Spacecraft Structure and Its Requirements on Materials2012(7): 15-18.
Google Scholar